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December 11, 2025International Journal of Molecular Sciences2 citationsOpen Access

Nanomedicine for Cancer and Autoimmune Immunotherapy

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ARAshi RamavatPAPriya AntilSKSoniya Kaushik

Key Points

  • To explore how nanomedicine can enhance immunotherapy for cancer and autoimmune diseases.
  • Discussion of sophisticated nanoparticles and their effects on immune responses.
  • Integration of artificial intelligence and multi-omics techniques in personalizing therapies.
  • Analysis of mechanisms that facilitate immune modulation.
  • Nanomedicine improves precision and efficacy of immunotherapy in cancer and autoimmune conditions.
  • Sophisticated nanoparticles effectively target immune compartments with minimal off-target effects.
  • Personalization of therapies is supported by patient-specific immuno-signatures.

Abstract

Nanomedicine has now become a transformative platform that enhances the precision and efficacy of immunotherapy approaches and allows customizations like never before when it comes to cancer, as well as autoimmune conditions. Using platforms based on nanoscale, researchers have been able to manipulate immune responses operating across spatial and temporal scales to address key limitations of conventional immunotherapy associated with working with immune response such as immune evasion, systemic toxicity, and poor pharmacokinetics. Sophisticated nanoparticles (such as stimuli-sensitive ones, exosome-mimetic vesicle nanoparticles, and nanoparticles with CRISPR) allow directed immunomodulators, antigens, and gene-editing systems to reach one or more particular immune compartments. The innovations allow reprogramming of immune cells, immune tolerance rejuvenation, and expansion of antitumor immunity without significant off-target effects. Finding applications in integrating the artificial intelligence as well as multi-omics techniques, the process leads to personalization of the nano-immunotherapies based on patient-specific immuno-signatures. The chapter discusses the mechanistic rationale, therapeutic advancement, and the translational opportunities of nanotechnology-based immunotherapies that define them as part of a foundation of future generations of clinical approaches to precision immune modulation in oncology and autoimmune diseases.

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Cite This Study

Ramavat et al. (2025) studied this question.

synapsesocial.com/papers/694019342d562116f28f6f77https://doi.org/10.3390/ijms262411941
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